---
title: "The driver of a car traveling at \\( 30.0 \\) \\( \\text{m/s} \\) applies the brakes and undergoes a constant negative acceleration of \\( 2.00 \\) \\( \\text{m/s}^2 \\). How many revolutions does each tire make before the car comes to a stop, assuming that the car does not skid and that the tires have radii of \\( 0.300 \\) \\( \\text{m} \\)?"
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url: "https://nerd-notes.com/ubq/104212/"
date_modified: "2025-10-30T07:00:49+00:00"
---

# The driver of a car traveling at \( 30.0 \) \( \text{m/s} \) applies the brakes and undergoes a constant negative acceleration of \( 2.00 \) \( \text{m/s}^2 \). How many revolutions does each tire make before the car comes to a stop, assuming that the car does not skid and that the tires have radii of \( 0.300 \) \( \text{m} \)?

The driver of a car traveling at \( 30.0 \) \( \text{m/s} \) applies the brakes and undergoes a constant negative acceleration of \( 2.00 \) \( \text{m/s}^2 \). How many revolutions does each tire make before the car comes to a stop, assuming that the car does not skid and that the tires have radii of \( 0.300 \) \( \text{m} \)?

*The answer key and step-by-step explanation are available to logged-in users at https://nerd-notes.com/ubq/104212/*
